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The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium 被引量:5
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作者 Hongmei Luo Jun Qian +13 位作者 Zhichao Xu Wanjing Liu Lei Xu Ying Li Jiang Xu Jianhong Zhang Xiaolan Xu Chang Liu Liu He Jianqin Li Chao Sun Francis Martin Jingyuan Song Shilin Chen 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2020年第4期455-467,共13页
Wolfiporia cocos(F. A. Wolf) has been praised as a food delicacy and medicine for centuries in China. Here, we present the genome and transcriptome of the Chinese strain CGMCC5.78 of W. cocos. High-confidence function... Wolfiporia cocos(F. A. Wolf) has been praised as a food delicacy and medicine for centuries in China. Here, we present the genome and transcriptome of the Chinese strain CGMCC5.78 of W. cocos. High-confidence functional prediction was made for 9277 genes among the 10,908 total predicted gene models in the W. cocos genome. Up to 2838 differentially expressed genes(DEGs)were identified to be related to sclerotial development by comparing the transcriptomes of mycelial and sclerotial tissues. These DEGs are involved in mating processes, differentiation of fruiting body tissues, and metabolic pathways. A number of genes encoding enzymes and regulatory factors related to polysaccharide and triterpenoid production were strikingly regulated. A potential triterpenoid gene cluster including the signature lanosterol synthase(LSS) gene and its modified components were annotated. In addition, five nonribosomal peptide synthase(NRPS)-like gene clusters,eight polyketide synthase(PKS) gene clusters, and 15 terpene gene clusters were discovered in the genome. The differential expression of the velevt family proteins, transcription factors,carbohydrate-active enzymes, and signaling components indicated their essential roles in the regulation of fungal development and secondary metabolism in W. cocos. These genomic and transcriptomic resources will be valuable for further investigations of the molecular mechanisms controlling sclerotial formation and for its improved medicinal applications. 展开更多
关键词 Wolfiporia cocos Genome sequencing sclerotial formation Fungal development Polysaccharide and triter-penoid biosynthesis
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水稻纹枯病菌谷胱甘肽S-转移酶基因的生物信息学及表达分析 被引量:4
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作者 张云欢 郑文博 +3 位作者 赵美 王陈骄子 周而勋 舒灿伟 《华北农学报》 CSCD 北大核心 2018年第1期45-51,共7页
通过生物信息学方法及表达分析对水稻纹枯病菌谷胱甘肽S转移酶基因(Rsgst)的功能进行探索。通过水稻纹枯病菌RSIADB基因组数据库查找Rsgst序列,确定该基因在水稻纹枯病菌基因组中的精确位置。利用生物信息学软件预测Rsgst编码蛋白氨基... 通过生物信息学方法及表达分析对水稻纹枯病菌谷胱甘肽S转移酶基因(Rsgst)的功能进行探索。通过水稻纹枯病菌RSIADB基因组数据库查找Rsgst序列,确定该基因在水稻纹枯病菌基因组中的精确位置。利用生物信息学软件预测Rsgst编码蛋白氨基酸序列的基本信息,并使用MEGA 5.0软件构建同源蛋白的系统发育树,最后用qRT-PCR检测Rsgst在菌核发育过程中的基因表达量,同时测定GST的酶活性。结果表明,Rsgst全长1 207 bp,该基因共编码277个氨基酸残基,其编码蛋白分子量为30.90 ku,理论等电点为9.42。该蛋白二级结构中以α-螺旋为主,占41.52%。系统发育树表明,水稻纹枯病菌GST蛋白与担子菌类玉米丝黑穗病菌GST蛋白亲缘关系最近。qRT-PCR结果表明,Rsgst在水稻纹枯病菌菌核发育过程中表达量不断上调,基因最高表达量是在第60小时,为7.64,而Rsgst的最高酶活性是在第5天,其酶活为0.375 U/μg。结果可为预测水稻纹枯病菌中Rsgst基因的功能奠定基础。 展开更多
关键词 水稻纹枯病菌 谷胱甘肽S-转移酶 菌核发育 酶活测定 基因组定位
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Three Genes Related to Trehalose Metabolism Affect Sclerotial Development of Rhizoctonia solani AG-1 IA,Causal Agent of Rice Sheath Blight
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作者 WANG Chenjiaozi ZHAO Mei +1 位作者 SHU Canwei ZHOU Erxun 《Rice science》 SCIE CSCD 2022年第3期268-276,共9页
Trehalose metabolism is related to the sclerotial development of Rhizoctonia solani AG-1 IA,the causal agent of rice sheath blight(RSB).Here,we further elucidated the functions of three genes Rstre,Rstps1 and Rstpp th... Trehalose metabolism is related to the sclerotial development of Rhizoctonia solani AG-1 IA,the causal agent of rice sheath blight(RSB).Here,we further elucidated the functions of three genes Rstre,Rstps1 and Rstpp that encode three key enzymes trehalase(TRE),alpha,alpha-trehalosephosphate synthase(TPS1)and trehalose 6-phosphate phosphatase(TPP)in the sclerotial development of R.solani AG-1 IA.Due to the lack of a stable genetic transformation system for R.solani,the heterologous expression of these three genes in Pichia pastoris GS115 was performed.The results showed that reactive oxygen species(ROS)contents and enzyme activities in R.solani decreased significantly in the treatments of the fermentation broths of Rstps1 and Rstpp transformants,and that in the treatment of the fermentation broth of Rstre transformant visibly increased.Furthermore,the fermentation broths of the transformants of all the three genes were added to potato dextrose agar(PDA)medium for the cultivation of R.solani,as a result,the dry weight of sclerotia in each PDA plate containing the fermentation broths of Rstps1 and Rstpp transformants significantly increased compared with the control,and that of Rstre transformant obviously decreased.Finally,178 proteins were found to interact with RSTPS1,and 16 of them were associated with ROS.Taken together,the findings suggest that all these three genes related to trehalose metabolism play important roles in the sclerotial development of R.solani AG-1 IA,and can be used as new targets for the development of novel high-efficiency fungicides for the controlling of RSB. 展开更多
关键词 Rhizoctonia solani AG-1 IA rice sheath blight reactive oxygen species trehalose metabolism gene functional analysis sclerotial development
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线粒体羧酸盐转运蛋白BcMito-TTP参与灰葡萄孢致病、产孢及菌核发育的研究 被引量:1
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作者 梁克力 刘四 +2 位作者 程家森 谢甲涛 付艳苹 《植物病理学报》 CAS CSCD 北大核心 2018年第1期80-88,共9页
灰葡萄孢菌(Botrytis cinerea)可侵染1 400多种植物,给全世界农作物生产造成了严重的损害。BcMito-TTP蛋白是一种进化保守的线粒体羧酸盐转运蛋白,酿酒酵母中研究发现该羧酸盐转运蛋白主要负责催化柠檬酸盐通过线粒体内膜流出以交换羧酸... 灰葡萄孢菌(Botrytis cinerea)可侵染1 400多种植物,给全世界农作物生产造成了严重的损害。BcMito-TTP蛋白是一种进化保守的线粒体羧酸盐转运蛋白,酿酒酵母中研究发现该羧酸盐转运蛋白主要负责催化柠檬酸盐通过线粒体内膜流出以交换羧酸盐H+离子等。本研究通过对BcMito-TTP基因进行敲除和功能互补发现,与原始菌株相比,敲除转化子生长速度没有差异,但产孢量有所降低,致病力明显减弱,菌核形成进程推迟。BcMito-TTP敲除转化子在添加CH3COONa培养基中生长速度变慢且将BcMito-TTP基因互补可以恢复上述生物学性状。推测BcMito-TTP蛋白的缺失阻碍了CH3COONa在灰葡萄孢体内的运输继而影响其孢子和菌核的形成,BcMito-TTP基因参与灰葡萄孢致病力分子机制正在进一步研究之中。 展开更多
关键词 灰葡萄孢 线粒体羧酸盐转运蛋白 孢子产量 致病力 菌核发育
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